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Differential Scanning Calorimetry — A Method for Assessing the Thermal Stability and Conformation of Protein Antigen

机译:差示扫描量热法-一种评估蛋白质抗原的热稳定性和构象的方法

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摘要

Differential scanning calorimetry (DSC) is an analytical technique that measures the molar heat capacity of samples as a function of temperature. In the case of protein samples, DSC profiles provide information about thermal stability, and to some extent serves as a structural “fingerprint” that can be used to assess structural conformation. It is performed using a differential scanning calorimeter that measures the thermal transition temperature (melting temperature; Tm) and the energy required to disrupt the interactions stabilizing the tertiary structure (enthalpy; ∆H) of proteins. Comparisons are made between formulations as well as production lots, and differences in derived values indicate differences in thermal stability and structural conformation. Data illustrating the use of DSC in an industrial setting for stability studies as well as monitoring key manufacturing steps are provided as proof of the effectiveness of this protocol. In comparison to other methods for assessing the thermal stability of protein conformations, DSC is cost-effective, requires few sample preparation steps, and also provides a complete thermodynamic profile of the protein unfolding process.
机译:差示扫描量热法(DSC)是一种分析技术,可测量样品的摩尔热容随温度的变化。对于蛋白质样品,DSC谱提供有关热稳定性的信息,并且在某种程度上用作可用来评估结构构象的结构“指纹”。使用差示扫描量热仪进行测量,该量热仪测量热转变温度(熔融温度; Tm)和破坏稳定蛋白质三级结构的相互作用所需的能量(焓;ΔH)。比较配方和生产批次,得出值的差异表明热稳定性和结构构象的差异。提供了说明DSC在工业环境中用于稳定性研究以及监视关键制造步骤的数据,以证明该协议的有效性。与评估蛋白质构象的热稳定性的其他方法相比,DSC具有成本效益,需要很少的样品制备步骤,并且还提供了蛋白质展开过程的完整热力学曲线。

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